|
|
|
|||
| Home Help Feedback Subscriptions Archive Search Table of Contents | ||||
Development, Vol 127, Issue 22 4811-4823, Copyright © 2000 by Company of Biologists
JOURNAL ARTICLES |
JJ Sanz-Ezquerro and C Tickle
Department of Anatomy and Physiology, Wellcome Trust Biocentre, University of Dundee, Dow Street, Dundee DD1 5EH, UK. j.j.sanzezquerro@dundee.ac.uk
The polarising region expresses the signalling molecule sonic hedgehog (Shh), and is an embryonic signalling centre essential for outgrowth and patterning of the vertebrate limb. Previous work has suggested that there is a buffering mechanism that regulates polarising activity. Little is known about how the number of Shh-expressing cells is controlled but, paradoxically, the polarising region appears to overlap with the posterior necrotic zone, a region of programmed cell death. We have investigated how Shh expression and cell death respond when levels of polarising activity are altered, and show an autoregulatory effect of Shh on Shh expression and that Shh affects cell death in the posterior necrotic zone. When we increased Shh signalling, by grafting polarising region cells or applying Shh protein beads, this led to a reduction in the endogenous Shh domain and an increase in posterior cell death. In contrast, cells in other necrotic regions of the limb bud, including the interdigital areas, were rescued from death by Shh protein. Application of Shh protein to late limb buds also caused alterations in digit morphogenesis. When we reduced the number of Shh-expressing cells in the polarising region by surgery or drug-induced killing, this led to an expansion of the Shh domain and a decrease in the number of dead cells. Furthermore, direct prevention of cell death using a retroviral vector expressing Bcl2 led to an increase in Shh expression. Finally, we provide evidence that the fate of some of the Shh-expressing cells in the polarising region is to undergo apoptosis and contribute to the posterior necrotic zone during normal limb development. Taken together, these results show that there is a buffering system that regulates the number of Shh-expressing cells and thus polarising activity during limb development. They also suggest that cell death induced by Shh could be the cellular mechanism involved. Such an autoregulatory process based on cell death could represent a general way for regulating patterning signals in embryos.
This article has been cited by other articles:
![]() |
N. Offner, N. Duval, M. Jamrich, and B. Durand The pro-apoptotic activity of a vertebrate Bar-like homeobox gene plays a key role in patterning the Xenopus neural plate by limiting the number of chordin- and shh-expressing cells Development, April 15, 2005; 132(8): 1807 - 1818. [Abstract] [Full Text] [PDF] |
||||
![]() |
P. J. Scherz, B. D. Harfe, A. P. McMahon, and C. J. Tabin The Limb Bud Shh-Fgf Feedback Loop Is Terminated by Expansion of Former ZPA Cells Science, July 16, 2004; 305(5682): 396 - 399. [Abstract] [Full Text] [PDF] |
||||
![]() |
O. Michos, L. Panman, K. Vintersten, K. Beier, R. Zeller, and A. Zuniga Gremlin-mediated BMP antagonism induces the epithelial-mesenchymal feedback signaling controlling metanephric kidney and limb organogenesis Development, July 15, 2004; 131(14): 3401 - 3410. [Abstract] [Full Text] [PDF] |
||||
![]() |
K. Suzuki, D. Bachiller, Y. P. Chen, M. Kamikawa, H. Ogi, R. Haraguchi, Y. Ogino, Y. Minami, Y. Mishina, K. Ahn, et al. Regulation of outgrowth and apoptosis for the terminal appendage: external genitalia: development by concerted actions of BMP signaling Development, December 22, 2003; 130(25): 6209 - 6220. [Abstract] [Full Text] [PDF] |
||||
![]() |
F. Gofflot, C. Hars, F. Illien, F. Chevy, C. Wolf, J. J. Picard, and C. Roux Molecular mechanisms underlying limb anomalies associated with cholesterol deficiency during gestation: implications of Hedgehog signaling Hum. Mol. Genet., May 15, 2003; 12(10): 1187 - 1198. [Abstract] [Full Text] [PDF] |
||||
![]() |
A. M. Ashique, K. Fu, and J. M. Richman Endogenous bone morphogenetic proteins regulate outgrowth and epithelial survival during avian lip fusion Development, January 10, 2002; 129(19): 4647 - 4660. [Abstract] [Full Text] [PDF] |
||||
![]() |
J.-B. Charrier, F. Lapointe, N. M. L. Douarin, and M.-A. Teillet Anti-apoptotic role of Sonic hedgehog protein at the early stages of nervous system organogenesis Development, October 15, 2001; 128(20): 4011 - 4020. [Abstract] [Full Text] [PDF] |
||||
![]() |
J. A. Montero, Y. Ganan, D. Macias, J. Rodriguez-Leon, J. J. Sanz-Ezquerro, R. Merino, J. Chimal-Monroy, M. A. Nieto, and J. M. Hurle Role of FGFs in the control of programmed cell death during limb development Development, June 1, 2001; 128(11): 2075 - 2084. [Abstract] [Full Text] [PDF] |
||||